Red-shifted photoredox generation and trapping of alkyl radicals towards bioorthogonality

Abstract

The photocatalytic generation and trapping of alkyl radicals is a powerful synthetic tool in organic chemistry, but it remains underexplored in biological settings. Here, we present two photoredox systems that leverage green- or red-light irradiation for the activation and subsequent Giese coupling of redox-active alkyl phthalimide esters. Besides utilizing mild low-energy light sources, these reactions operate with biocompatible BnNAH or NADH as electron donor. Notably, they display compatibility with air, water and biologically relevant conditions, including cell-culture media or even cell lysates. This work marks a significant step towards integrating synthetic alkyl-radical chemistry into biological settings.

Graphical abstract: Red-shifted photoredox generation and trapping of alkyl radicals towards bioorthogonality

Supplementary files

Article information

Article type
Communication
Submitted
19 Mar 2025
Accepted
16 Apr 2025
First published
16 Apr 2025
This article is Open Access
Creative Commons BY license

Org. Biomol. Chem., 2025, Advance Article

Red-shifted photoredox generation and trapping of alkyl radicals towards bioorthogonality

D. Montoto, U. Deus-Lorenzo, M. Tomás-Gamasa, J. L. Mascareñas and M. Mato, Org. Biomol. Chem., 2025, Advance Article , DOI: 10.1039/D5OB00476D

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